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月球陨石的铅-铅年龄及初始铅同位素组成:NWA 773族、NWA 4734和佐法尔287

Pb-Pb ages and initial Pb isotopic composition of lunar meteorites: NWA 773 clan, NWA 4734, and Dhofar 287.

作者信息

Merle R E, Nemchin A A, Whitehouse M J, Snape J F, Kenny G G, Bellucci J J, Connelly J N, Bizzarro M

机构信息

Swedish Museum of Natural History, SE-104 05 Stockholm, Sweden.

School of Earth and Planetary Sciences (EPS), Curtin University, GPO Box U1987, Perth, WA 6845, Australia.

出版信息

Meteorit Planet Sci. 2020 Aug;55(8):1808-1832. doi: 10.1111/maps.13547.

Abstract

Constraining the duration of magmatic activity on the Moon is essential to understand how the lunar mantle evolved chemically through time. Determining age and initial isotopic compositions of mafic lunar meteorites is a critical step in defining the periods of magmatic activity that occurred during the history of the Moon and to constrain the chemical characteristics of mantle components involved in the sources of the magmas. We have used the in situ Pb-Pb SIMS technique to investigate eight lunar gabbros and basalts, including six meteorites from the Northwest Africa (NWA) 773 clan (NWA 2727, NWA 2700, NWA 3333, NWA 2977, NWA 773, and NWA 3170), NWA 4734, and Dhofar 287A. These samples have been selected as there is no clear agreement on their age and they are all from the dominant low titanium chemical group. We have obtained ages of 2981 ± 12 Ma for NWA 4734 and 3208 ± 22 Ma for Dhofar 287. For the NWA 773 clan, four samples (the fine-grained basalt NWA 2727 and the three gabbros NWA 773, NWA 2977, NWA 3170) out of six yielded isochron-calculated ages that are identical within uncertainties and yielding an average age of 3086 ± 5 Ma. The age obtained for the fine-grained basalt NWA 2700 is not precise enough for comparison with the other samples. The gabbroic sample NWA 3333 yielded an age of 3038 ± 20 Ma suggesting that two distinct magmatic events may be recorded in the meteorites of the NWA 773 clan. The present study aims to identify and assess all potential issues that are associated with different ways to date lunar rocks using U-Pb-based methods. To achieve this, we have compared the new ages with the previously published data set. The entire age data set from lunar mafic meteorites was also screened to identify data showing analytical issues and evidence of resetting and terrestrial contamination. The data set combining the ages of mafic lunar meteorites and Apollo rocks suggests pulses of magmatic activity with two distinct phases between 3950 and 3575 Ma and between 3375 and 3075 Ma with the two phases separated by a gap of approximately 200 Ma. The evolution of the Pb initial ratios of the low-Ti mare basalts between approximately 3400 and 3100 Ma suggests that these rocks were progressively contaminated by a KREEP-like component.

摘要

限制月球岩浆活动的持续时间对于理解月球地幔如何随时间发生化学演化至关重要。确定镁铁质月球陨石的年龄和初始同位素组成是界定月球历史上岩浆活动时期以及限制岩浆源中所涉及地幔成分化学特征的关键步骤。我们使用原位铅 - 铅二次离子质谱技术研究了八块月球辉长岩和玄武岩,包括来自西北非洲(NWA)773族的六块陨石(NWA 2727、NWA 2700、NWA 3333、NWA 2977、NWA 773和NWA 3170)、NWA 4734以及佐法尔287A。选择这些样本是因为它们的年龄尚无明确共识,且均来自占主导地位的低钛化学组。我们测得NWA 4734的年龄为2981 ± 12百万年,佐法尔287的年龄为3208 ± 22百万年。对于NWA 773族,六个样本中的四个(细粒玄武岩NWA 2727以及三块辉长岩NWA 773、NWA 2977、NWA 3170)得出的等时线计算年龄在误差范围内相同,平均年龄为3086 ± 5百万年。细粒玄武岩NWA 2700获得的年龄不够精确,无法与其他样本进行比较。辉长岩样本NWA 3333得出的年龄为3038 ± 20百万年,这表明在NWA 773族陨石中可能记录了两个不同的岩浆事件。本研究旨在识别和评估与使用基于铀 - 铅的方法测定月球岩石年龄的不同方式相关的所有潜在问题。为实现这一目标,我们将新年龄与先前公布的数据集进行了比较。还对来自月球镁铁质陨石的整个年龄数据集进行了筛选,以识别显示分析问题以及重置和地球污染证据的数据。结合月球镁铁质陨石和阿波罗岩石年龄的数据集表明,在3950至3575百万年以及3375至3075百万年之间存在两个不同阶段的岩浆活动脉冲,两个阶段之间间隔约200百万年。约3400至3100百万年之间低钛月海玄武岩的铅初始比值演化表明,这些岩石逐渐受到类克里普岩成分的污染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c43f/7611475/0987621f346d/EMS131186-f001.jpg

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